1.High throughput screening atrazine chlorohydrolase mutants with enhanced activity through Haematococcus pluvialis expression system.
Huizhuan WANG ; Xiwen CHEN ; Xiaohua HAO ; Defu CHEN
Chinese Journal of Biotechnology 2011;27(4):620-628
Developing a high-throughput screening method is of great importance for directed evolution of atrazine chlorohydrolase. A mutagenesis library of atzA from Pseudomonas sp. ADP and Arthrobacter sp. AD1 was constructed using error-prone PCR and DNA shuffling. Candidate mutants were screened through Haematococcus pluvialis expression system, using atrazine as selection pressure. Sequence analysis showed that mutations in the obtained 12 mutants with enhanced activity were all point-substitutions and scattered throughout the gene. Enzymatic activity analysis showed that the mutants all had higher activities than that of the wild type. The activities were 1.8-3.6 fold of the wild-type enzyme when cultured in BBM medium with 1 mg/L atrazine, whereas 1.8-2.6 fold with 2 mg/L atrazine. These results indicated that Haematococcus pluvialis expression system is an ideal high throughput screening system for directed evolution of atrazine chlorohydrolase.
Amidohydrolases
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genetics
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Atrazine
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metabolism
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Bacterial Proteins
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genetics
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Biodegradation, Environmental
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Chlorophyta
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genetics
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metabolism
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Herbicides
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metabolism
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High-Throughput Screening Assays
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Hydrolases
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biosynthesis
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genetics
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Mutagenesis, Insertional
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Pseudomonas
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enzymology
;
genetics
2.A Study on Altered Expression of Serine Palmitoyltransferase and Ceramidase in Psoriatic Skin Lesion.
Kyung Kook HONG ; Hee Ryung CHO ; Won Chul JU ; Yunhi CHO ; Nack In KIM
Journal of Korean Medical Science 2007;22(5):862-867
Ceramides are the main lipid component maintaining the lamellae structure of stratum corneum, as well as lipid second messengers for the regulation of cellular proliferation and/or apoptosis. In our previous study, psoriatic skin lesions showed marked decreased levels of ceramides and signaling molecules, specially protein kinase C-alpha (PKC-alpha) and c-jun N-terminal kinase (JNK) in proportion to the psoriasis area and severity index (PASI) scores, which suggested that the depletion of ceramide is responsible for epidermal hyperproliferation of psoriasis via downregulation of proapoptotic signal cascade such as PKC-alpha and JNK. In this study, we investigated the protein expression of serine palmitoyltransferase (SPT) and ceramidase, two major ceramide metabolizing enzymes, in both psoriatic epidermis and non-lesional epidermis. The expression of SPT, the ceramide generating enzyme in the de novo synthesis in psoriatic epidermis, was significantly less than that of the non-lesional epidermis, which was inversely correlated with PASI score. However, the expression of ceramidase, the degradative enzyme of ceramides, showed no significant difference between the lesional epidermis and the non-lesional epidermis of psoriatic patients. This might suggest that decreased expression of SPT protein is one of the important causative factors for decreased ceramide levels in psoriasis.
Adolescent
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Adult
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Amidohydrolases/*biosynthesis/metabolism
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Apoptosis
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Cell Proliferation
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Ceramidases
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Ceramides/chemistry
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Child
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Epidermis/metabolism
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Female
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Humans
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JNK Mitogen-Activated Protein Kinases/metabolism
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Male
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Models, Biological
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Protein Kinase C-alpha/metabolism
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Psoriasis/*blood/diagnosis
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Serine C-Palmitoyltransferase/*biosynthesis